Frequency Domain Techniques for H? Control of Distributed Parameter Systems

Frequency Domain Techniques for H? Control of Distributed Parameter Systems
Title Frequency Domain Techniques for H? Control of Distributed Parameter Systems PDF eBook
Author Hitay Ozbay
Publisher SIAM
Pages 200
Release 2018-10-09
Genre Technology & Engineering
ISBN 1611975395

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This book presents new computational tools for the H? control of distributed parameter systems in which transfer functions are considered as input-output descriptions for the plants to be controlled. The emphasis is on the computation of the controller parameters and reliable implementation. The authors present recent studies showing that the simplified skew-Toeplitz method is applicable to a wide class of systems, supply detailed examples from systems with time delays and various engineering applications, and discuss reliable implementation of the controller, complemented by a software based on MATLAB. Frequency Domain Techniques for H? Control of Distributed Parameter Systems is intended for advanced undergraduate and early graduate students interested in robust control of distributed parameter systems?time delay systems?as well as researchers and engineers working in related fields. It can be used in the following courses: Introduction to Robust Control with Applications to Distributed Parameter Systems and Introduction to Robust Control with Applications to Time Delay Systems.

Frequency Domain Techniques for H? Control of Distributed Parameter Systems

Frequency Domain Techniques for H? Control of Distributed Parameter Systems
Title Frequency Domain Techniques for H? Control of Distributed Parameter Systems PDF eBook
Author Hitay Ozbay
Publisher SIAM
Pages 204
Release 2018-10-09
Genre Technology & Engineering
ISBN 1611975409

Download Frequency Domain Techniques for H? Control of Distributed Parameter Systems Book in PDF, Epub and Kindle

This book presents new computational tools for the H? control of distributed parameter systems in which transfer functions are considered as input-output descriptions for the plants to be controlled. The emphasis is on the computation of the controller parameters and reliable implementation. The authors present recent studies showing that the simplified skew-Toeplitz method is applicable to a wide class of systems, supply detailed examples from systems with time delays and various engineering applications, and discuss reliable implementation of the controller, complemented by a software based on MATLAB. Frequency Domain Techniques for H? Control of Distributed Parameter Systems is intended for advanced undergraduate and early graduate students interested in robust control of distributed parameter systems?time delay systems?as well as researchers and engineers working in related fields. It can be used in the following courses: Introduction to Robust Control with Applications to Distributed Parameter Systems and Introduction to Robust Control with Applications to Time Delay Systems.

Control and Estimation in Distributed Parameter Systems

Control and Estimation in Distributed Parameter Systems
Title Control and Estimation in Distributed Parameter Systems PDF eBook
Author H. T. Banks
Publisher SIAM
Pages 239
Release 1992-01-01
Genre Technology & Engineering
ISBN 9781611970982

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Research in control and estimation of distributed parameter systems encompasses a wide range of applications including both fundamental science and emerging technologies. The latter include smart materials (piezoceramics, shape memory alloys, magnetostrictives, electrorheological fluids) fabrication and testing, design of high-pressure chemical vapor deposition (CVD) reactors for production of microelectronic surfaces (e.g., semiconductors), while the former include groundwater contamination cleanup and other environmental modeling questions, climatology, flow control, and fluid-structure interactions as well as more traditional topics in biology, mechanics, and acoustics. These expository papers provide substantial stimulus to both young researchers and experienced investigators in control theory. Includes a comprehensive and lucid presentation that relates frequency domain techniques to state-space or time domain approaches for infinite-dimensional systems including design of robust stabilizing and finite-dimensional controllers for infinite-dimensional systems. It focuses on these two approaches to control design in an integrated system theoretic framework. This is excellent reading for researchers in both the frequency domain and time domain control communities. In other articles, topics considered include pointwise control of distributed parameter systems, bounded and unbounded sensors and actuators, stabilization issues for large flexible structures, and an overview discussion of damping models for flexible structures.

H∞-Control for Distributed Parameter Systems: A State-Space Approach

H∞-Control for Distributed Parameter Systems: A State-Space Approach
Title H∞-Control for Distributed Parameter Systems: A State-Space Approach PDF eBook
Author Bert van Keulen
Publisher Springer Science & Business Media
Pages 251
Release 2012-12-06
Genre Science
ISBN 1461203473

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VI 5.3 Proof of the measurement-feedback result. 144 5.4 Relaxation of the a priori assumptions .. 165 5.4.1 Including the feedthroughs . . . . . 165 5.4.2 How to 'remove' the regularity assumptions 174 6 Examples and conclusions 177 6.1 Delay systems in state-space . . . . . . . . . . 177 6.1.1 Dynamic controllers for delay systems. 180 184 6.1.2 A linear quadratic control problem . . 6.1.3 Duality ............... . . 189 6.2 The mixed-sensitivity problem for delay systems 192 6.2.1 Introduction and statement of the problem. 192 6.2.2 Main result .............. . 194 6.3 Conclusions and directions for future research. 200 A Stability theory 205 A.1 205 A.2 206 B Differentiability and some convergence results 207 B.l 207 208 B.2 B.3 209 209 B.4 B.5 209 B.6 211 B.7 213 214 C The invariant zeros condition C.1 214 221 D The relation between P, Q and P 221 D.1 ............ .... . Bibliography 230 239 Index Preface Control of distributed parameter systems is a fascinating and challenging top ic, from both a mathematical and an applications point of view. The same can be said about Hoc-control theory, which has become very popular lately. I am therefore pleased to present in this book a complete treatment of the state-space solution to the Hoo-control problem for a large class of distributed parameter systems.

Frequency Domain Robust Control of Distributed Parameter Systems

Frequency Domain Robust Control of Distributed Parameter Systems
Title Frequency Domain Robust Control of Distributed Parameter Systems PDF eBook
Author Yossi Chait
Publisher
Pages 208
Release 1988
Genre Control theory
ISBN

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State-space and Frequency-domain Methods in the Control of Distributed Parameter Systems

State-space and Frequency-domain Methods in the Control of Distributed Parameter Systems
Title State-space and Frequency-domain Methods in the Control of Distributed Parameter Systems PDF eBook
Author Stephen P. Banks
Publisher
Pages 140
Release 1983
Genre Technology & Engineering
ISBN

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Investigation of a Frequency Domain Identification Technique for Distributed Parameter System

Investigation of a Frequency Domain Identification Technique for Distributed Parameter System
Title Investigation of a Frequency Domain Identification Technique for Distributed Parameter System PDF eBook
Author
Publisher
Pages 47
Release 1972
Genre
ISBN

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Often in process simulation studies and process control it is desirable to have an approximate transfer function that could be used for dynamic simulation via analog computer or for feedforward control algorithms. The scope of the work is concerned with developing a general analytical technique that can be easily implemented in obtaining approximate transfer functions for distributive parameter systems of the convective type, where the spacial dependence of the dependent variable is of little interest from a control viewpoint. This technique relies on a distributed parameter model that is transformed into ordinary differential equations in the frequency domain. These equations are then analyzed in the frequency domain using well known classical techniques. The frequency solution of the ordinary differential equation provides the necessary data to carry out regressions on the parameters of the postulated transfer function.